• Electronics Optics & Control
  • Vol. 23, Issue 9, 96 (2016)
GENG Yu-hao, XIAO Wen-sheng, CUI Jun-guo, and WANG Hong-yan
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1671-637x.2016.09.019 Cite this Article
    GENG Yu-hao, XIAO Wen-sheng, CUI Jun-guo, WANG Hong-yan. Fuzzy PID Control of Quad-Rotor Aircraft Based on Anti-windup Technology[J]. Electronics Optics & Control, 2016, 23(9): 96 Copy Citation Text show less

    Abstract

    When quad-rotor aircraft is trapped in the great disturbance of wind, windup phenomenon may appear for simple PID controller, under the combined action of integration element and saturation limit element. Thus may lead to deterioration of system's dynamic responses, and big overshoot or imbalance of quad-rotor. A dynamics simulation model is established for the quad-rotor aircraft, and the causes of windup phenomenon are analyzed. An anti-windup PID controller with fuzzy variable parameters is designed to alleviate the windup phenomenon. Contrastive analysis is made to the controller with the existing fuzzy PID controller and the anti-windup PID controller with constant parameters. The results of simulation indicate that, the fuzzy PID controller based on anti-windup technology can effectively restrain the windup phenomenon, and speed up the attitude adjustment process of quad-rotor.
    GENG Yu-hao, XIAO Wen-sheng, CUI Jun-guo, WANG Hong-yan. Fuzzy PID Control of Quad-Rotor Aircraft Based on Anti-windup Technology[J]. Electronics Optics & Control, 2016, 23(9): 96
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